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Floating-disk parylene microvalve for self-regulating biomedical flow controls

机译:浮盘聚对二甲苯微阀,用于自我调节生物医学流量控制

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摘要

A novel self-regulating parylene micro valve is presented in this paper with potential applications for biomedical flow controls. Featuring a free-floating bendable valve disk and two-level valve seat, this surface-micromachined polymeric valve accomplishes miniature pressure/flow rate regulation in a band-pass profile stand-alone without the need of power sources or active actuation. Experimental data of underwater testing results have successfully demonstrated that the microfabricated in-channel valve can regulate water flow at 0-80 mmHg and 0-10 µL/min pressure/flow rate level, which is perfectly suitable for biomedical and lab-on-a-chip applications. For example, such biocompatible microvalve can be incorporated in ocular implants for control of eye fluid drainage to fulfill intraocular pressure (IOP) regulation in glaucoma patients.
机译:本文提出了一种新型的自调节聚对二甲苯微阀,其在生物医学流量控制中的潜在应用。这种表面微机械加工的聚合物阀具有自由浮动的可弯曲阀盘和两级阀座,可在独立通过带通曲线的情况下实现微型压力/流量调节,而无需电源或主动致动。水下测试结果的实验​​数据已成功证明,微型管道阀可在0-80 mmHg和0-10 µL / min的压力/流速水平下调节水流量,非常适合生物医学和实验室实验室芯片应用。例如,可以将这种生物相容性微阀并入眼用植入物中以控制眼液引流,从而满足青光眼患者的眼内压(IOP)调节。

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